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All optical Flip-Flop based on a nonlinear DFB semiconductor laser: Theoretical study

机译:基于非线性DFB半导体激光器的全光学触发器:理论研究

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摘要

A new design of an all optical Flip-Flop is proposed. It consists of a nonlinear distributed feedback (DFB) laser. The wave guiding layer of the DFB laser consists of linear grating section followed by a nonlinear one, and both sections are separated by a phase shift section. In the OFF-state, the real part of the refractive index in the wave guiding layer forms a Bragg grating. In the ON-state, it forms a Bragg grating with a phase shift section. Optical gain is achieved by current injection in the semiconductor active layer. Nonlinearity in the nonlinear layers of the semiconductor grating was achieved by direct absorption at the edge of the absorption band (Urbach tail). Numerical simulation shows that the device switches in a nanosecond time scale.
机译:提出了一种全光触发器的新设计。它由非线性分布反馈(DFB)激光器组成。 DFB激光器的波导层由线性光栅部分和非线性部分组成,两个部分由相移部分隔开。在断开状态下,波导层中的折射率的实部形成布拉格光栅。在导通状态下,它形成具有相移部分的布拉格光栅。通过在半导体有源层中注入电流来实现光学增益。半导体光栅非线性层中的非线性是通过在吸收带(Urbach尾部)边缘直接吸收来实现的。数值模拟表明,该设备以纳秒级的时间切换。

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